Literature DB >> 32978260

α2-Macroglobulin-like protein 1 can conjugate and inhibit proteases through their hydroxyl groups, because of an enhanced reactivity of its thiol ester.

Seandean Lykke Harwood1, Nadia Sukusu Nielsen2, Kathrine Tejlgård Jensen2, Peter Kresten Nielsen3, Ida B Thøgersen2, Jan J Enghild4.   

Abstract

Proteins in the α-macroglobulin (αM) superfamily use thiol esters to form covalent conjugation products upon their proteolytic activation. αM protease inhibitors use theirs to conjugate proteases and preferentially react with primary amines (e.g. on lysine side chains), whereas those of αM complement components C3 and C4B have an increased hydroxyl reactivity that is conveyed by a conserved histidine residue and allows conjugation to cell surface glycans. Human α2-macroglobulin-like protein 1 (A2ML1) is a monomeric protease inhibitor but has the hydroxyl reactivity-conveying histidine residue. Here, we have investigated the role of hydroxyl reactivity in a protease inhibitor by comparing recombinant WT A2ML1 and the A2ML1 H1084N mutant in which this histidine is removed. Both of A2ML1s' thiol esters were reactive toward the amine substrate glycine, but only WT A2ML1 reacted with the hydroxyl substrate glycerol, demonstrating that His-1084 increases the hydroxyl reactivity of A2ML1's thiol ester. Although both A2ML1s conjugated and inhibited thermolysin, His-1084 was required for the conjugation and inhibition of acetylated thermolysin, which lacks primary amines. Using MS, we identified an ester bond formed between a thermolysin serine residue and the A2ML1 thiol ester. These results demonstrate that a histidine-enhanced hydroxyl reactivity can contribute to protease inhibition by an αM protein. His-1084 did not improve A2ML1's protease inhibition at pH 5, indicating that A2ML1's hydroxyl reactivity is not an adaption to its acidic epidermal environment.
© 2020 Harwood et al.

Entities:  

Keywords:  A2ML1; alpha 2 macroglobulin like protein 1; alpha-2-macroglobulin; complement; inhibition mechanism; mutagenesis; mutagenesis in vitro; protease; protease inhibitor; protein crosslinking; thiol ester; α2-macroglobulin

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Year:  2020        PMID: 32978260      PMCID: PMC7864068          DOI: 10.1074/jbc.RA120.015694

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  33 in total

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  1 in total

1.  Cryo-EM structures of human A2ML1 elucidate the protease-inhibitory mechanism of the A2M family.

Authors:  Nadia Sukusu Nielsen; Alessandra Zarantonello; Seandean Lykke Harwood; Kathrine Tejlgård Jensen; Katarzyna Kjøge; Ida B Thøgersen; Leif Schauser; Jesper Lykkegaard Karlsen; Gregers R Andersen; Jan J Enghild
Journal:  Nat Commun       Date:  2022-05-31       Impact factor: 17.694

  1 in total

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